Industry Standard Crimp Terminals | General electrical wiring (residential, light industrial) | Conductivity: 55 MS/m (bare copper) Pull Force: 250N Corrosion: Uncoated | Cost-effective, widely compatible with tools and standards | Prone to oxidation; limited corrosion resistance in harsh environments |
Our Base Crimp Terminals | Moderate environments (commercial wiring, HVAC systems) | Conductivity: 58 MS/m (tinned copper) Pull Force: 300N Corrosion: ASTM B117 >500hrs (tinned coating) | Enhanced corrosion resistance vs. standard; balanced strength-to-cost ratio | Moderate temperature range (-20°C to 90°C); no advanced plating for extreme use |
Our Advanced Crimp Terminals | Harsh environments (marine, industrial machinery) | Conductivity: 58 MS/m▲ Pull Force: 400N▲ Corrosion: Silver-plated (ASTM B117 >1000hrs)▲ Temp: -40°C to 125°C▲ | Superior durability, extreme temperature tolerance, ultra-low oxidation | Higher cost; requires specialized crimping tools |
Screw Terminals | Frequent connection/disconnection (test equipment, temporary setups) | Connection Type: Screw-based Pull Force: 280N Corrosion: Zinc-plated | Reusable; easy adjustment during maintenance | Longer installation time; lower mechanical strength under vibration |
Ring Terminals | High-current applications (batteries, heavy machinery) | Circular Design: 10mm² capacity Pull Force: 350N Material: Copper | High current handling (up to 50A) Secure for vibration-prone environments | Bulky design; limited flexibility for tight spaces |
Compression Lug Terminals | High-voltage infrastructure (power grids, transformers) | Compression Fit: 10mm² to 50mm² compatibility Pull Force: 320N Material: Aluminum | Lightweight for large-scale installations Strong grip on thick cables | Lower conductivity (Aluminum: 37 MS/m) vs. copper; heavier than crimp terminals |